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速度发展速率内生物物理不对称肢体的运动学

Kinematics of biophysically asymmetric limbs within rate of velocity development.

作者信息

Brown Lee E, Sjostrom Tara, Comeau Matthew J, Whitehurst Mike, Greenwood Mike, Findley Brian W

机构信息

California State University, Fullerton, Fullerton, California 92834, USA.

出版信息

J Strength Cond Res. 2005 May;19(2):298-301. doi: 10.1519/1533-4287(2005)19[298:KOBALW]2.0.CO;2.

Abstract

The purpose of this study was to investigate the movement speed characteristics of 2 intrinsically different limbs. Twenty subjects volunteered to participate (10 men and 10 women). Each subject performed 5 repetitions of concentric knee and elbow extension and flexion movements at 60 through 500 d.s(-1) on an isokinetic dynamometer. Kinematic data were collected at 1,000 Hz and separated into rate of velocity development (RVD) and peak torque. Results demonstrated a significant (p < 0.05) main effect for sex for RVD and peak torque. Significant (p < 0.05) differences were also demonstrated between knee and elbow RVD and between knee and elbow peak torque at every speed tested. Neither knee and elbow RVD nor peak torque demonstrated any significant Pearson correlations at any speed tested (r = -0.17-0.41). These results collectively point to the specificity of limb speed and torque as a result of biophysical differences such as length and mass. Therefore, strength and speed may be modulated by neuromotor patterns that differ based on individual limbs.

摘要

本研究的目的是调查两种本质上不同肢体的运动速度特征。20名受试者自愿参与(10名男性和10名女性)。每位受试者在等速测力计上以60至500度/秒(d.s⁻¹)的速度进行5次同心膝关节和肘关节伸展与屈曲运动。运动学数据以1000赫兹的频率收集,并分为速度发展率(RVD)和峰值扭矩。结果表明,RVD和峰值扭矩在性别上存在显著(p < 0.05)的主效应。在每个测试速度下,膝关节和肘关节的RVD之间以及膝关节和肘关节的峰值扭矩之间也存在显著(p < 0.05)差异。在任何测试速度下,膝关节和肘关节的RVD以及峰值扭矩均未显示出任何显著的皮尔逊相关性(r = -0.17 - 0.41)。这些结果共同表明,由于诸如长度和质量等生物物理差异,肢体速度和扭矩具有特异性。因此,力量和速度可能受基于个体肢体而不同的神经运动模式调节。

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